Mehta P K, Christen P
Biochemisches Institut, Universität Zürich, Switzerland.
Eur J Biochem. 1993 Jan 15;211(1-2):373-6. doi: 10.1111/j.1432-1033.1993.tb19907.x.
Bacterial deletion mutants have indicated that the gene products of cobC, nifS, pabC and malY participate in important metabolic pathways, i.e. cobalamin synthesis, nitrogen fixation, synthesis of p-aminobenzoate and the regulation of the maltose system, respectively. However, the proteins themselves and their specific functions have not yet been identified. In the course of our studies on the evolutionary relationships among aminotransferases, we have found that the above gene products are homologous to aminotransferases. Profile analysis [Gribskov, M., Lüthy, R. & Eisenberg, D. (1990) Methods Enzymol. 183, 146-159] based on the amino acid sequences of certain subgroups of aminotransferases as probes attributed significant Z scores in the range 5-20 SD to the deduced amino acid sequences of the above gene products as included in the protein data base. Reciprocal profile analyses confirmed the homologies. All known aminotransferases are pyridoxal-5'-phosphate-dependent enzymes and catalyze the reversible transfer of amino groups from amino acids to oxo acids. The sequence homologies suggest that the above gene products are aminotransferases or other closely related pyridoxal-5'-phosphate-dependent enzymes probably catalyzing transformations of amino acids involving cleavage of a bond at C alpha.
细菌缺失突变体表明,cobC、nifS、pabC和malY的基因产物分别参与重要的代谢途径,即钴胺素合成、固氮、对氨基苯甲酸合成以及麦芽糖系统的调节。然而,这些蛋白质本身及其具体功能尚未确定。在我们对转氨酶进化关系的研究过程中,我们发现上述基因产物与转氨酶同源。基于某些转氨酶亚组的氨基酸序列作为探针进行的轮廓分析[Gribskov, M., Lüthy, R. & Eisenberg, D. (1990) Methods Enzymol. 183, 146 - 159],将5 - 20标准差范围内的显著Z值赋予了蛋白质数据库中上述基因产物的推导氨基酸序列。相互轮廓分析证实了这些同源性。所有已知的转氨酶都是依赖于磷酸吡哆醛的酶,催化氨基从氨基酸到酮酸的可逆转移。序列同源性表明,上述基因产物是转氨酶或其他密切相关的依赖于磷酸吡哆醛的酶,可能催化涉及α-碳原子处化学键断裂的氨基酸转化反应。